References
- M.E. Wilson, Ms. Gul Rukh, M.A. Ashraf, The role of
nanotechnology, based on carbon nanotubes in water and
wastewater treatment, Desal. Water Treat., 242 (2021) 12–21.
- P.J. Landrigan, R. Fuller, S. Fisher, W.A. Suk, P. Sly, T.C. Chiles,
S. Bose-O’Reilly, Pollution and children’s health, Sci. Total
Environ., 650 (2019) 2389–2394.
- M. Husein, R.-J. Zhao, H.-D. Zhu, C. Xu, S. Yang, A. El-Fatah
Abomohra, P. Kaba, Q.Z. Yang, Assessing the performance
of modified waste cotton cloth (MWCC) installed in a
biological contact reactor as a biofilm carrier used for
domestic wastewater treatment, SN Appl. Sci., 1 (2019) 1391,
doi: 10.1007/s42452-019-1414-3.
- T.W. Davis, C.J. Gobler, Special issue “global expansion of
harmful cyanobacterial blooms: diversity, ecology, causes and
controls”, Harmful Algae, 54 (2016) 1–238.
- J.D. Hagy III, B.J. Kreakie, M.C. Pelletier, F. Nojavan, J.A. Kiddon,
A.J. Oczkowski, Quantifying coastal ecosystem trophic state
at a macroscale using a Bayesian analytical framework, Ecol.
Indic., 142 (2022) 109267, doi: 10.1016/j.ecolind.2022.109267.
- L. Rotta, E. Alcântara, E. Park, N. Bernardo, F. Watanabe,
A single semi-analytical algorithm to retrieve chlorophyll-a
concentration in oligo-to-hypereutrophic waters of a
tropical reservoir cascade, Ecol. Indic., 120 (2021) 106913,
doi: 10.1016/j.ecolind.2020.106913.
- K. Dörnhöfer, P. Klinger, T. Heege, N. Oppelt, Multi-sensor
satellite and in situ monitoring of phytoplankton development
in a eutrophic-mesotrophic lake, Sci. Total Environ., 612 (2018)
1200–1214.
- L. Díez-Quijada, A.I. Prieto, R. Guzmán-Guillén, A. Jos,
A.M. Cameán, Occurrence and toxicity of microcystin congeners
other than MC-LR and MC-RR: a review, Food Chem. Toxicol.,
125 (2019) 106–132.
- Y. Zhang, J.K. Whalen, S. Sauvé, Phytotoxicity and
bioconcentration of microcystins in agricultural plants:
meta-analysis and risk assessment, Environ. Pollut.,
272 (2021) 115966, doi: 10.1016/j.envpol.2020.115966.
- R. Carman, S. Tomevska, A Million Fish Dead in ’Distressing’
Outback Algal Bloom at Menindee, 2019. Available at:
https://www.abc.net.au/news/2019-01-08/second-fish-kill-indarling-
river-at-menindee/10696632
- I. Sanseverino, D. Conduto, R. Loos, T. Lettieri, Cyanotoxins:
methods and approaches for their analysis and detection,
JRC Tech. Rep., (2017) EUR-28624, EN. Available at doi:10.2760/36186.
- S.M. Azevedo, W.W. Carmichael, E.M. Jochimsen,
K.L. Rinehart, S. Lau, G.R. Shaw, G.K. Eaglesham, Human
intoxication by microcystins during renal dialysis treatment
in Caruaru - Brazil, Toxicology, (2002) 181–182, 441–446,
doi: 10. 1016/S0300-483X(02)00491-2.
- S. Pouria, A. de Andrade, J. Barbosa, R.L. Cavalcanti, V.T. Barreto,
C.J. Ward, W. Preiser, G.K. Poon, G.H. Neild, G.A. Codd, Fatal
microcystin intoxication in haemodialysis unit in Caruaru,
Brazil, Lancet, 352 (1998) 21–26.
- W.W. Carmichael, S.M.F.O. Azevedo, Ji. Si. An, R.J.R. Molica,
E.M. Jochimsen, S. Lau, K.L. Rinehart, G.R. Shaw, G.K. Eaglesham,
Human fatalities from cyanobacteria: chemical and biological
evidence for cyanotoxins, Environ. Health Perspect., 109 (2001)
663–668.
- J.E. Niamen-Ebrottie, S. Bhattacharyya, P.R. Deep, B. Nayak,
Bloom forming toxic cyanobacteria from Mahanadi River
near Hirakud reservoir of western Odisha, Int. J. Recent Sci.
Res., 6 (2015) 5036–5039.
- F.M. Buratti, M. Manganelli, S. Vichi, M. Stefanelli,
S. Scardala, E. Testai, E. Funari, CTX: producing organisms,
occurrence, toxicity, mechanism of action, and human
health toxicological risk evaluation, Arch. Toxicol., (2017),
doi: 10.1007/s00204- 016-1913-6.
- H. Nasri, S. El Herry, N. Bouaïcha, First reported case of turtle
deaths during a toxic Microcystis spp. bloom in Lake Ubeira,
Algeria, Ecotoxicol. Environ. Saf., 71 (2008) 535–544.
- S. Bidi-Akli, A. Arab, B. Samraoui, Variation spatio-temporelle
du zooplancton dans le barrage de la réserve de chasse de
Zéralda (Algérie), RevEcol.-Terre Vie., 69 (2014) 214–224.
- W.K. Dodds, W.W. Bouska, J.L. Eitzmann, T.J. Pilger, K.L. Pitts,
A.J. Riley, J.T. Schloesser, D.J. Thornbrugh, Eutrophication
of U.S, freshwaters: analysis of potential economic damages,
Environ. Sci. Technol., 43 (2009) 12–19.
- D.A. Steffensen, Economic Cost of Cyanobacterial Blooms,
H.K. Hudnell, Ed., Cyanobacterial Harmful Algal Blooms:
State of the Science and Research Needs, Adv. Exp. Med.
Assoc., Vol. 619, Springer Press, New York, 2008, pp. 855–866.
Available at http://www.epa.gov/cyano_habs_symposium/
(Accessed June 17, 2009 Chapter 37).
- E.S. Bakker, S. Hilt, Impact of water-level fluctuations on
cyanobacterial blooms: options for management, Aquat. Ecol.,
50 (2016) 485–498.
- A. Saoudi, C. Barour, L. Brient, R. Ouzrout, M. Bensouilah,
Environmental parameters and spatio-temporal dynamics of
cyanobacteria in the reservoir of Mexa (Extreme North-East of
Algeria), Adv. Environ. Biol., 9 (2015) 109–121.
- A. Saoudi, L. Brient, B. Sabrine, S. Ouzrout, R. Bormans,
M. Bensouilah, Management of toxic cyanobacteria for drinking
water production of Ain Zada Dam, Environ. Monit. Assess.,
189 (2017) 361.
- F.Z. Guellati, H. Touati, K. Tambosco, C. Quiblier,
J.F. Humbert, M. Bensouilah, Unusual cohabitation and
competition between Planktothrix rubescens and Microcystis sp.
(cyanobacteria) in a subtropical reservoir (HammamDebagh)
located in Algeria, PloS One, 12 (2017) 0183540,
doi: 10.1371/journal.pone.0183540.
- H. Touati, F.Z. Guellati, S. Arif, M. Bensouilah, Cyanobacteria
dynamics in a Mediterranean Reservoir of the North East of
Algeria: vertical and seasonal variability, J. Ecol. Eng., 20 (2019)
93–107.
- S. Charifi, T. Merad, F.Z. Guellati, H. Touati, M. Bensouilah,
Dynamic of filamentous cyanobacteria in the Dam Ain Zada
(North of Algeria), J. Ecol. Eng., 20 (2019) 97–110.
- Kh. Boufligha, A. Saoudi, K. Boutarfa, S. Belhaouas,
H. Touati, M. Bensouilah, Dynamic of microcystin-LR producing
cyanobacteria in a drinking water supply: Guenitra
dam (North-East of Algeria), Egypt, J. Aquat. Biol. Fish.,
25 (2021) 377–395.
- L. Benredjem, H. Berredjem, A. Abdi, M.C. Casero,
A. Quesada, B. Fosso, M. Marzano, G. Pesole, J. Azevedo,
V. Vasconcelos, Morphological, molecular, and biochemical
study of cyanobacteria from a eutrophic Algerian reservoir
(Cheffia), Environ. Sci. Pollut. Res., 29 (2022) 27624–27635.
- M.Á. Lezcano, A. Quesada, R. El-Shehawy, Seasonal dynamics
of microcystin-degrading bacteria and toxic cyanobacterial
blooms: interaction and influence of abiotic factors, Harmful
Algae, 71 (2018) 19–28.
- S. Gkelis, M. Panou, I. Chronis, S.i-K. Zervou, C. Christophoridis,
K. Manolidi, C. Ntislidou, T.M. Triantis, T. Kaloudis, A. Hiskia,
I. Kagalou, M. Lazaridou, Monitoring a newly re-born
patient: water quality and cyanotoxin occurrence in a
reconstructed shallow Mediterranean lake, AIOL J., 8 (2017),
doi: 10.4081/aiol.2017.6350.
- Coyne and Bellier, Barrage de Bougous Wilaya d’El Tarf.
Monographie sur l’aménagement, document de synthèse,
1 (2011) 116.
- C.L. Treyture, J. Jacques Barbe, A. Dutartre, Protocole
standardisé d’échantillonnage, de conservation et d’observation
du phytoplancton en plan d’eau. Cemagref. Département
milieux Aquatiques. Unité Réseaux, Epuration et Qualité
des Eaux, groupement de Bordeaux, 2007, p. 19. Available at
https://hal.inrae.fr/hal-02590418
- J. Komarek, K. Anagnostidis, Cyanoprokaryota: Part 1:
Chroococcales. Sü Bwasser flora von Mittelleuropa Freshwater
Flora of Central Europe, Spektrum Akademischer Verlag
Heidelberg, Germany, 1999.
- J. Komarek, K. Anagnostidis. Cyanoprokaryota: Part 2:
Oscillatoriales Sü Bwasserflora von Mittelleuropa Freshwater
Flora of Central Europe, Spektrum Akademischer Verlag
Heidelberg, Germany, 2005.
- J. Komárek, Cyanoprokaryota: 3rd Part: Heterocystousgenera,
B. Büdel, G. Gärtner, L. Krienitz, M. Schagerl,
Eds., Süßwasserfloravon Mitteleuropa, Bd. 19 (3), Springer
Spektrum, Berlin, Heidelberg, 2013, 1130 p.
- J. Komárek, J. Kaštovský, J. Mareš, J.R. Johansen, Taxonomic
classification of cyanoprokaryotes (cyanobacterial genera),
using a polyphasic approach, Preslia, 86 (2014) 295–335.
- L. Brient, M. Lengronne, E. Bertrand, D. Rolland, A. Sipel,
D. Steinmann, I. Baudin, M. Legeas, B. Le Rouzica, M. Bormansa,
A phycocyanin probe as a tool for monitoring cyanobacteria
in freshwater bodies, J. Environ. Monit., 10 (2008) 248–255.
- I. Chorus, M. Welker, Toxic Cyanobacteria in Water, 2nd ed.,
CRC Press, Boca Raton (FL), On Behalf of the World Health
Organization, Geneva, CH, 2021.
- A. Aminot, R. Kerouel, Hydrologie des écosystèmes marins.
Paramètres et analyses. Ed. Lfremer., 2004, 336 p.
- R. Galvez-Cloutier, S. Ize, S. Arsenault, La détérioration
des plans d’eau: Manifestations et moyens de lutte contre
l’eutrophisation, Vecteur environnement, 35 (2002) 18–37.
- L.R. Ferber, S.N. Levine, A. Lini, G.P. Livingston,
Do cyanobacteria dominate in eutrophic lakes because they fix
atmospheric nitrogen?, Freshwater Biol., 49 (2004) 690–708.
- F. Peeters, D. Straile, A. Lorke, D. Ollinger, Turbulent mixing
and phytoplankton spring bloom development in a deep lake,
Limnol. Oceanogr., 52 (2007) 286–298
- Z.E. Taranu, R.W. Zurawell, F. Pick, I. Gregory-Eaves, Predicting
cyanobacterial dynamics in the face of global change:
the importance of scale and environmental context, Global
Change Biol., 18 (2012) 3477–3490.
- J. Antunes, P. Leão, V. Vasconcelos, Cylindrospermopsis raciborskii:
distribution, phylogeography and ecophysiology of a global
invasive species, Front. Microbiol., 6 (2015) 473, doi: 10.3389/fmicb.2015.00473.
- A. Budzyńska, J. Rosińska, A. Pełechata, M. Toporowska,
A. Napiórkowska-Krzebietke, Kozak, A.B. Messyasz, W. Pęczuła,
M. Kokociński, E. Szeląg-Wasielewska, M. Grabowska,
B. Mądrecka, M. Niedźwiecki,
P. Alcaraz-Parraga, M. Pełechaty,
M. Karpowicz, B. Pawlik-Skowrońska, Environmental factors
driving the occurrence of the invasive cyanobacterium
Sphaerospermopsis aphanizomenoides (Nostocales) in temperate
lakes, Sci. Total Environ., 650 (2019) 1338–1347.
- L. Koker, R. Akcaalan, M. Albay, B.A. Neilan, Molecular
detection of hepatotoxic cyanobacteria in inland water bodies
of the Marmara Region, Turkey, AIOL, 8 (2017) 52–60.
- M. Douma, Y. Ouahid, M. Loudiki, F.F. del Campo, B. Oudra,
The first detection of potentially toxic Microcystis strains in
two Middle Atlas Mountains natural lakes (Morocco), Environ.
Monit. Assess., 189 (2017), doi: 10.1007/s10661-016-5753-x.
- M.F. Falcone-Dias, M. Vaz Rodrigues, J.L. Nielsen, N. de Jonge,
N.O.G. Jørgensen, D.P. Alonso, G.S. David, R.J. da Silva,
J.P.A. Júnior, Occurrence of cyanobacteria and microcystins in
hydroelectric reservoirs used for fish farming, J. Water Health.,
18 (2020) 983–994.
- T. Kaloudis, A. Hiskia, T.M. Triantis, Cyanotoxins in bloom: everincreasing
occurrence and global distribution of freshwater
cyanotoxins from planktic and benthic cyanobacteria, Toxins,
14 (2022) 264, doi: 10.3390/toxins14040264.
- M.A. Mariani, B.M. Padedda, J. Kaštovsky, P. Buscarinu,
N. Sechi, T. Virdis, A. Luglie, Effects of trophic status on
microcystin production and the dominance of cyanobacteria
in the phytoplankton assemblage of Mediterranean reservoirs,
Sci. Rep., 5 (2015) 17964, doi: 10.1038/srep17964.
- H. Nasri, N. Bouaïcha, M. KaidHarche, New morphospecies
of Microcystis sp. forming bloom in the Cheffia Dam (Algeria):
seasonal variation of microcystin concentrations in the raw
water and their removal in a full-scale treatment plant,
Environ. Toxicol., 22 (2007) 347–356.
- I. Hurtado, L. Pouget, S. Fernández, P. Cascales, Monitoring
and forecasting cyanobacteria risk for a drinking water plant
in Spain, Water Supply, 22 (2022) 6296–6307.
- R. Vieira-Lanero, S. Barca, M.C. Cobo, F. Cobo, Occurrence
of freshwater cyanobacteria and bloom records in Spanish
Reservoirs (1981–2017), Hydrobiology, (2022) 122–136,
doi: 10.3390/hydrobiology1010009.
- HW. Paerl, J. Huisman, Blooms like it hot, Science,
320 (2008) 57–58.
- R.D. dos Santos Silva, J. dos Santos Severiano, D.A. de Oliveira,
C.F. Mendes, V.V. Barbosa, M.A. Chia,
J.E. de Lucena Barbosa,
Spatio-temporal variation of cyanobacteria and cyanotoxins
in public supply reservoirs of the semi-arid region of Brazil,
J. Limnol., 79 (2019) 13–29.
- C.S. Reynolds, Dynamics, selection and composition of
phytoplankton in relation to vertical structure in lakes, Arch.
Hydrobiol. Beih. Engeben. Limnol., 35 (1992) 13–31.
- A. Ouartsi, A. Saoudi, D. Chekireb, Etude des efflorescences
toxiques A cyanobacteries dans le barrage Mexa, Algerie,
Rev. Microbiol. Ind. San et Environ., 5 (2011) 81–100.
- T. Kataoka, K. Ohbayashi, Y. Kobayashi, H. Takasu, S. Nakano,
R. Kondo, Y. Hodoki, Distribution of the harmful bloomforming
cyanobacterium, Microcystis aeruginosa, in 88 freshwater
environments across Japan, Microb. Environ., 35 (2020).
- M. Xiao, M. Li, CS. Reynolds, Formation de colonies dans le
cyanobacterium Microcystis, BiolRev Cambridge Philos. Soc.,
93 (2018) 1399–1420.
- S. Bidi-Akli, H. Hacene, A. Arab, Impact of abiotic factors on the
spatio-temporal distribution of cyanobacteria in the Zeralda’s
dam (Algeria), Rev. Ecol.-Terre Vie, 72 (2017) 159–167.
- H. AitHammou, D. Latour, S. Samoudi, K. Mouhri, M. Douma,
J. Robin, M. Loudiki, Occurrence of the first toxic Microcystis
bloom in a recent Moroccan reservoir, Water Resour., 45 (2018)
409–417.
- S. Samoudi, D. Latour, J. Robin, M. Sabart, B. Misson,
H. Ait Hammou, K. Mouhri, M. Loudiki, Horizontal
distribution of the cell abundance and toxicity of Microcystis in
a hypereutrophic Moroccan reservoir, Contemp. Probl. Ecol.,
9 (2016) 554–562.
- S. Cirés, L. Wörmer, D. Carrasco, A. Quesada, Sedimentation
patterns of toxin-producing Microcystis morphospecies in
freshwater reservoirs, Toxins (Basel), 5 (2013) 939–957.
- S.W. Wilhelm, G.S. Bullerjahn, R.M.L. McKay, The complicated
and confusing ecology of Microcystis blooms, mBio,
11 (2020), doi: 10.1128/mBio.00529-20.
- M. Lürling, F. Van Oosterhout, E. Faassen, Eutrophication
and warming boost cyanobacterial biomass and microcystins,
Toxins, 9 (2017) 1–16.
- M. Stefanelli, S. Scardala, P.A. Cabras, A. Orrù, S. Vichi,
E. Testai, M. Manganelli, Cyanobacterial dynamics and toxins
concentrations in Lake Alto Flumendosa, Sardinia, Italy, AIOL
J., 8 (2017), doi: 10.4081/aiol.2017.6352.
- M.A.D. Mowe, S.M. Mitrovic, R.P. Lim, A. Furey, D.C.J. Yeo,
Tropical cyanobacterial blooms: a review of prevalence,
problem taxa, toxins and influencing environmental factors,
J. Limnol., 74 (2015) 205–224.
- L.C. Bowling, S. Blais, M. Sinotte, Heterogeneous spatial and
temporal cyanobacterial distributions in Missisquoi Bay, Lake
Champlain: an analysis of a 9 year dataset, J. Great Lakes
Res., 41 (2015) 164–179.
- C.M. Kitchens, T.H. Johengen, T.W. Davis, Establishing
spatial and temporal patterns in Microcystis sediment seed
stock viability and their relationship to subsequent bloom
development in western Lake Erie, PLoS One, 13 (2018) 0206821,
doi: 10.1371/journal.pone.0206821.
- B. Qin, G. Yang, J. Ma, T. Wu, W. Li, L. Liu, J. Deng, J. Zhou,
Spatiotemporal changes of cyanobacterial bloom in large
shallow eutrophic Lake Taihu, China, Front. Microbiol., 9 (2018)
451, doi: 10.3389/fmicb.2018.00451.
- J. Pahissa, C. Fernández-Enríquez, C. de Hoyos, Water quality
of Lake Sanabria according to phytoplankton. A comparison
with historical data, Limnetica, 34 (2015) 527–540.
- N. Bensafia, A. Djabourabi, H. Touati, M. Rachedi,
S. Belhaoues, Evolution of physicochemical parameters and
trophic state of three Park National of El-Kala water bodies
(North-east Algeria), Egypt. J. Aquat. Biol. Fish., 24 (2020)
249–263.
- M. Garmendia, M. Revilla, J. Bald, J. Franco, A. Laza-Martínez,
E. Orive, S. Seoane, V. Valencia, Á. Borja, Phytoplankton
communities and biomass size structure (fractionated
chlorophyll “a”), along trophic gradients of the Basque coast
(northern Spain), Biogeochem., 106 (2011) 243–263.
- A. Rigosi, C.C. Carey, B.W. Ibelings, J.D. Brookes, The
interaction between climate warming and eutrophication
to promote cyanobacteria is dependent on trophic state and
varies among taxa, Limnol. Oceanogr., 59 (2014) 99–114.
- E.J. Gonzalez, G. Roldan, Eutrophication and Phytoplankton:
Some Generalities From Lakes and Reservoirs of the AMERICAS,
M. Turkoglu, Ed., Phytoplankton Ecology and Dynamics,
IntechOpen, 2019, pp. 1–20, doi: 10.5772/intechopen.89010.
- E.S. Deutsch, I. Alameddine, S.S. Qian, Using structural equation
modeling to better understand Microcystis biovolume
dynamics in a Mediterranean hypereutrophic reservoir,
Ecol. Modell., 435 (2020) 109282, doi: 10.1016/j.ecolmodel.2020.109282.
- M. Le Moal, A. Pannard, L. Brient, B. Richard, M. Chorin,
E. Mineaud, C. Wiegand, Is the cyanobacterial bloom
composition shifting due to climate forcing or nutrient
changes? Example of a shallow eutrophic reservoir, Toxins,
13 (2021) 351.